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Fungal Genetics and Biology : FG & B|June 21, 2015
Previous bottlenecks and future solutions to dissecting the Zymoseptoria tritici-wheat host-pathogen interactionJason J RuddCurrent Opinion in Plant Biology|March 13, 2019
Cell surface immune receptors: the guardians of the plant's extracellular spacesKostya Kanyuka, Jason J RuddThe New Phytologist|April 20, 2021
Unravelling response-specificity in Ca<sup>2+</sup> signalling pathways in plant cellsJason J Rudd, Vernonica E Franklin-TongJournal of Experimental Botany|November 29, 2002
Signals and targets of the self-incompatibility response in pollen of Papaver rhoeasJason J Rudd, Vernonica E Franklin-TongPlant Signaling & Behavior|August 26, 2009
Plant resistance signalling hijacked by a necrotrophic fungal pathogenKim E Hammond-Kosack, Jason J RuddFungal Genetics and Biology : FG & B|June 21, 2015
Virus induced gene silencing (VIGS) for functional analysis of wheat genes involved in Zymoseptoria tritici susceptibility and resistanceWing-Sham Lee, Jason J Rudd, Kostya KanyukaJournal of Plant Physiology|August 7, 2010
The complex interactions between host immunity and non-biotrophic fungal pathogens of wheat leavesSiân Deller, Kim E Hammond-Kosack, Jason J RuddPlant Physiology|April 29, 2008
The wheat mitogen-activated protein kinases TaMPK3 and TaMPK6 are differentially regulated at multiple levels during compatible disease interactions with Mycosphaerella graminicolaJason J Rudd, John Keon, Kim E Hammond-KosackThe Journal of Biological Chemistry|March 6, 2004
Dynamic changes in the localization of MAPK cascade components controlling pathogenesis-related (PR) gene expression during innate immunity in parsleyJustin Lee, Jason J Rudd, Violetta K Macioszek, et al.Molecular Plant Pathology|June 12, 2023
Comparison of the impact of two key fungal signalling pathways on Zymoseptoria tritici infection reveals divergent contribution to invasive growth through distinct regulation of infection-associated genesHarry T Child, Michael J Deeks, Jason J Rudd, et al.Pageof 5